The electromagnetic (EM) coupling between metal nanoparticles (NPs) is of essential importance in nanoplasmonic systems, leading to a variety of fundamental studies and practical applications. The successive investigations in this field not only bring forward surprising optical effects in nanoplasmonics, but also allow revealing other novel chemical/physical properties in relevant systems. In this article, we will discuss the EM coupling in four types of typical plasmonic nanostructures, i.e., single aggregated metal NPs, asymmetric metal NPs dimers, nano-manipulated metal NPs and supported metal NPs on a substrate, and outlook the corresponding impacts in understanding physics and extending applications
AbstractLocalized surface plasmon resonance (LSPR) arises when light interacts with metallic nanopar...
Metal nanoparticles interact strongly with light due to a resonant response of their free electrons....
Plasmonic nanoparticle pairs known as “dimers ” embody a simple system for generating intense nanosc...
The strong electromagnetic field that is induced at the surface of a plasmonic nanoparticle can be u...
Metallic nanostructures support resonant oscillations of their conduction band electrons called loca...
The optical properties of two-component quasi-one-dimensional nanostructures consisting of Au and Ni...
The optical properties of metallic particles change dramatically as the size shrinks to the nanoscal...
Based on a popular article in Laser and Photonics Reviews, this book provides an explanation and ove...
Metal-semiconductor nanostructures represent an important new class of materials employed in designi...
24 pages, 26 figures.-- PACS nrs.: 73.20.Mf, 73.22.Lp, 78.47.-p, 78.67.Bf, 81.16.Be, 81.16.Dn, 81.16...
The strong coupling between planar arrays of gold and silver nanoparticles mediated by a near-field ...
This book introduces the fascinating world of plasmonics and physics at the nanoscale, with a focus ...
The strong coupling between planar arrays of gold and silver nanoparticles mediated by a near-field ...
This book represents the first detailed description, including both theoretical aspects and experime...
Recently, we showed that the plasmon resonance coupling between two interacting metal nanoparticles ...
AbstractLocalized surface plasmon resonance (LSPR) arises when light interacts with metallic nanopar...
Metal nanoparticles interact strongly with light due to a resonant response of their free electrons....
Plasmonic nanoparticle pairs known as “dimers ” embody a simple system for generating intense nanosc...
The strong electromagnetic field that is induced at the surface of a plasmonic nanoparticle can be u...
Metallic nanostructures support resonant oscillations of their conduction band electrons called loca...
The optical properties of two-component quasi-one-dimensional nanostructures consisting of Au and Ni...
The optical properties of metallic particles change dramatically as the size shrinks to the nanoscal...
Based on a popular article in Laser and Photonics Reviews, this book provides an explanation and ove...
Metal-semiconductor nanostructures represent an important new class of materials employed in designi...
24 pages, 26 figures.-- PACS nrs.: 73.20.Mf, 73.22.Lp, 78.47.-p, 78.67.Bf, 81.16.Be, 81.16.Dn, 81.16...
The strong coupling between planar arrays of gold and silver nanoparticles mediated by a near-field ...
This book introduces the fascinating world of plasmonics and physics at the nanoscale, with a focus ...
The strong coupling between planar arrays of gold and silver nanoparticles mediated by a near-field ...
This book represents the first detailed description, including both theoretical aspects and experime...
Recently, we showed that the plasmon resonance coupling between two interacting metal nanoparticles ...
AbstractLocalized surface plasmon resonance (LSPR) arises when light interacts with metallic nanopar...
Metal nanoparticles interact strongly with light due to a resonant response of their free electrons....
Plasmonic nanoparticle pairs known as “dimers ” embody a simple system for generating intense nanosc...